The electrochemically induced functionalization of glassy carbon electrode by aryl groups having an aliphatic amine group was achieved by reduction of in situ generated diazonium cations in aqueous media. The corresponding diazonium cations of 4-aminobenzylamine, 2-aminobenzylamine, 4-(2-aminoethyl)aniline, N-methyl-1,2-phenylenediamine, and N,N-dimethyl-p-phenylenediamine were generated in situ with sodium nitrite in aqueous HCl. The kinetics of electrochemical grafting were investigated with electrochemical impedance spectroscopy and electrochemical quartz crystal microbalance measurements (with carbon-coated quartz crystal), and the barrier properties of the grafted layers were evaluated by cyclic voltammetry in the presence of electroac...
International audienceThe electrochemically induced functionalization of carbon-based screen-printed...
4-Nitrophenyl layers were grafted on gold and glassy carbon surfaces by electrochemical reductive ad...
The functionalization of electrode surfaces is a useful approach to gain a better understanding of s...
Two different surface derivation procedures have been used to modify glassy carbon electrodes based ...
The effect of various parameters on the grafting of pyridine, by electrochemical reduction of 3-diaz...
Glassy carbon electrodes were modified with pyridine by electrografting of the corresponding in situ...
WOS: 000256569900005The electrochemical reduction of 4-{[(1E)-(2-hydroxynaphthyl)methylidene]amino}-...
Electrochemical and spectroscopic investigations were performed in order to clarify the mechanism of...
<div>In situ generated aryl diazonium cations were synthesized in the electrochemical cell by reacti...
This thesis described the modification of glassy carbon (GC) electrodes with aminophenyl (AP) films ...
Activated carbon products modified with benzoic, benzenesulfonic and benzylphosphonic acid groups we...
The electrochemical behavior of organic films grafted onto glassy carbon (GC) and bearing NO2, NHOH ...
In situ generated aryl diazonium cations were synthesized in the electrochemical cell by reaction of...
This work describes an electrochemical study of 4-nitrobenzene diazonium (4-NBD) reduction onto glas...
A series of diazonium salts bearing different para substituents was used to functionalize glassy car...
International audienceThe electrochemically induced functionalization of carbon-based screen-printed...
4-Nitrophenyl layers were grafted on gold and glassy carbon surfaces by electrochemical reductive ad...
The functionalization of electrode surfaces is a useful approach to gain a better understanding of s...
Two different surface derivation procedures have been used to modify glassy carbon electrodes based ...
The effect of various parameters on the grafting of pyridine, by electrochemical reduction of 3-diaz...
Glassy carbon electrodes were modified with pyridine by electrografting of the corresponding in situ...
WOS: 000256569900005The electrochemical reduction of 4-{[(1E)-(2-hydroxynaphthyl)methylidene]amino}-...
Electrochemical and spectroscopic investigations were performed in order to clarify the mechanism of...
<div>In situ generated aryl diazonium cations were synthesized in the electrochemical cell by reacti...
This thesis described the modification of glassy carbon (GC) electrodes with aminophenyl (AP) films ...
Activated carbon products modified with benzoic, benzenesulfonic and benzylphosphonic acid groups we...
The electrochemical behavior of organic films grafted onto glassy carbon (GC) and bearing NO2, NHOH ...
In situ generated aryl diazonium cations were synthesized in the electrochemical cell by reaction of...
This work describes an electrochemical study of 4-nitrobenzene diazonium (4-NBD) reduction onto glas...
A series of diazonium salts bearing different para substituents was used to functionalize glassy car...
International audienceThe electrochemically induced functionalization of carbon-based screen-printed...
4-Nitrophenyl layers were grafted on gold and glassy carbon surfaces by electrochemical reductive ad...
The functionalization of electrode surfaces is a useful approach to gain a better understanding of s...